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High Voltage 1000V-1500V Battery Testing System from China Suppliers & Factory with ±0.05% Voltage Accuracy
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High Voltage 1000V-1500V Battery Testing System from China Suppliers & Factory with ±0.05% Voltage Accuracy

This cutting-edge testing system is engineered for high-voltage battery applications, offering exceptional precision and adaptability. With a voltage accuracy of ±0.05% FS, it guarantees ultra-reliable performance measurements. As a leading supplier in China, our factory is dedicated to providing advanced solutions that meet the needs of modern battery technology. Trust our state-of-the-art system to deliver the performance you require for your high-voltage applications
  • Brand Hongda
  • Material Metal+ABS
  • Voltage 1000V-1500V
  • Current Customized

Its innovative dual closed-loop architecture integrates constant current (CC) and constant voltage (CV) sources, enabling seamless collaboration between power modes for exceptional stability and rapid dynamic response. A standout innovation lies in its one-step simulation capability, allowing continuous charge-discharge switching within a single workflow without manual intervention—dramatically improving testing efficiency while reducing energy waste. Designed for next-gen EV batteries, energy storage systems, and industrial R&D, this system redefines precision control and operational agility in high-power battery testing scenarios.

Dual Closed-Loop

Integrates constant current (CC) and constant voltage (CV) sources for exceptional stability and rapid dynamic response.

One-Step Simulation

Enables continuous charge-discharge switching in a single workflow without manual intervention, reducing energy waste.

Target Applications

Engineered specifically for next-gen EV batteries, high-power energy storage systems, and advanced industrial R&D.

Frequently Asked Questions

How does the dual closed-loop architecture function?

The dual closed-loop architecture integrates constant current (CC) and constant voltage (CV) sources. This design enables seamless collaboration between power modes to ensure exceptional stability and rapid dynamic response during testing.

What is the benefit of the one-step simulation capability?

It allows continuous charge-discharge switching within a single workflow without manual intervention. This dramatically improves testing efficiency while reducing overall energy waste.

Which industries and applications is this system designed for?

This system is specifically designed for next-generation EV batteries, energy storage systems, and industrial R&D applications.

Does the system require manual intervention during charge-discharge cycles?

No. Thanks to the one-step simulation capability, the system manages continuous switching between charging and discharging automatically within a single workflow.

How does this system improve high-power battery testing?

By combining precision control and operational agility, the system redefines testing workflows, offering higher efficiency, stability, and responsiveness for high-power battery scenarios.